Seyrek Emek, Dubin Paul L, Tribet Christophe, Gamble Elizabeth A
Department of Chemistry, Indiana University-Purdue University at Indianapolis, 402 N. Blackford Street, Indiana 46202, USA.
Biomacromolecules. 2003 Mar-Apr;4(2):273-82. doi: 10.1021/bm025664a.
The effect of univalent electrolyte concentration on protein-polyelectrolyte complex formation has been measured by frontal analysis continuous capillary electrophoresis (FACCE) and turbidimetry for the interaction of bovine serum albumin (BSA) with a synthetic hydrophobically modified polyacid, for BSA with (porcine mucosal) heparin (Hp), a highly charged polyanion, and for Hp and insulin. All three highly diverse systems display maxima or plateaus in complex formation in the range of ionic strength 5 < I < 30 mM, confirmed in the case of BSA-Hp by multiple techniques. Similar maxima are reported in the literature, but with little discussion, for BSA-poly(dimethyldiallylammonium chloride), lysozyme-hyaluronic acid, and lysozyme-chondroitin sulfate, always in the I range 5-30 mM. While inversion of salt effect has been discussed specifically for the interaction of gelatin and sodium polystyrenesulfonate with gelatin(28) and with beta-lactoglobulin,(10) the general nature of this phenomenon, regardless of polyelectrolyte origin, molecular weight, and charge sign has not been recognized. The position of the maxima and their occurrence when protein and polyelectrolyte have the same net charge imply that they arise when Debye lengths extend, at low I, beyond half the protein diameter so that addition of salt screens repulsions, as well as attractions. This appears to be a general effect caused by electrostatic repulsions that can coexist simultaneously with hydrophobic interactions. Modeling of protein electrostatics via Delphi is used to visualize this effect for BSA, lysozyme, insulin, and beta-lactoglobulin.
通过前沿分析连续毛细管电泳(FACCE)和比浊法,测量了单价电解质浓度对蛋白质 - 聚电解质复合物形成的影响,研究了牛血清白蛋白(BSA)与合成疏水改性聚酸、BSA与(猪黏膜)肝素(Hp,一种高电荷聚阴离子)以及Hp与胰岛素之间的相互作用。所有这三个高度不同的体系在离子强度5<I<30 mM范围内复合物形成均出现最大值或平台期,BSA - Hp体系通过多种技术得到了证实。文献中也报道了BSA - 聚(二甲基二烯丙基氯化铵)、溶菌酶 - 透明质酸和溶菌酶 - 硫酸软骨素在I范围为5 - 30 mM时存在类似的最大值,但讨论较少。虽然已经专门讨论了明胶与聚苯乙烯磺酸钠相互作用以及明胶与β - 乳球蛋白相互作用时盐效应的反转情况,但这种现象的一般性质,无论聚电解质的来源、分子量和电荷符号如何,都尚未得到认识。最大值的位置以及当蛋白质和聚电解质具有相同净电荷时它们的出现意味着,当德拜长度在低离子强度下延伸超过蛋白质直径的一半时就会出现这种情况,这样添加盐会屏蔽排斥力以及吸引力。这似乎是一种由静电排斥引起的普遍效应,它可以与疏水相互作用同时共存。通过Delphi对蛋白质静电进行建模,以可视化BSA、溶菌酶、胰岛素和β - 乳球蛋白的这种效应。